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体外定量光诱导荧光法测量牙釉质矿化的变化。

In vitro quantitative light-induced fluorescence to measure changes in enamel mineralization.

作者信息

Gmür Rudolf, Giertsen Elin, van der Veen Monique H, de Josselin de Jong Elbert, ten Cate Jacob M, Guggenheim Bernhard

机构信息

Institute for Oral Biology, Section for Oral Microbiology and General Immunology, University of Zürich, Plattenstrasse 11, 8032, Zürich, Switzerland.

出版信息

Clin Oral Investig. 2006 Sep;10(3):187-95. doi: 10.1007/s00784-006-0058-z. Epub 2006 Jun 30.

Abstract

A sensitive, quantitative method for investigating changes in enamel mineralization of specimens subjected to in vitro or in situ experimentation is presented. The fluorescence-detecting instrument integrates a Xenon arc light source and an object positioning stage, which makes it particularly suitable for the nondestructive assessment of demineralized or remineralized enamel. We demonstrate the ability of in vitro quantitative light-induced fluorescence (QLF) to quantify changes in mineralization of bovine enamel discs that had been exposed in vitro to a demineralizing gel (n=36) or biofilm-mediated demineralization challenges (n=10), or were carried in situ by three volunteers during a 10-day experiment (n=12). Further experiments show the technique's value for monitoring the extent of remineralization in 36 specimens exposed in vitro to oral multispecies biofilms and document the repeatability of in vitro QLF measurements (n=10) under standardized assay conditions. The validity of the method is illustrated by comparison with transversal microradiography (TMR), the invasive current gold standard for assessing experimental changes in enamel mineralization. Ten discs with 22 measurement areas for comparison demonstrated a positive correlation between TMR and QLF (r=0.82). Filling a technological gap, this QLF system is a promising tool to assay in vitro nondestructively localized changes in mineralization of enamel specimens.

摘要

本文提出了一种灵敏的定量方法,用于研究体外或原位实验标本牙釉质矿化的变化。该荧光检测仪器集成了氙弧光源和样品定位台,这使其特别适用于对脱矿或再矿化牙釉质进行无损评估。我们展示了体外定量光诱导荧光(QLF)技术量化牛牙釉质盘矿化变化的能力,这些牙釉质盘在体外分别暴露于脱矿凝胶(n = 36)或生物膜介导的脱矿挑战(n = 10),或在三名志愿者原位携带进行为期10天的实验(n = 12)。进一步的实验表明,该技术对于监测36个体外暴露于口腔多种生物膜的标本的再矿化程度具有价值,并记录了在标准化检测条件下体外QLF测量的可重复性(n = 10)。通过与横向显微放射摄影(TMR)(评估牙釉质矿化实验变化的侵入性现行金标准)进行比较,说明了该方法的有效性。十个具有22个测量区域用于比较的牙釉质盘显示,TMR与QLF之间呈正相关(r = 0.82)。填补了一项技术空白,这种QLF系统是一种有前途的工具,可用于体外无损检测牙釉质标本矿化的局部变化。

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